TY - JOUR
T1 - Coordinating carbon, electricity, and CCER markets for cost-effective decarbonization of China's power sector
AU - Hu, Yu Jie
AU - Wu, Mei
AU - Tang, Bao Jun
N1 - Publisher Copyright:
© 2026 Elsevier Ltd
PY - 2026/12
Y1 - 2026/12
N2 - The electricity sector faces multiple challenges during its transition, including pressure to reduce emissions, cost constraints, and uncertainty in the design of low-carbon policies. Consequently, effective coordination between policy instruments in the electricity and carbon markets has become essential for achieving a cost-effective sectoral transition. Using an SD-Un-Super-SBM framework, this study develops an integrated analytical model that links the electricity market, carbon allowances (CA), and Chinese Certified Emission Reductions (CCER) and systematically evaluates how different policy instruments and their settings affect sectoral development and structural adjustment. Fifteen scenarios are designed to examine the effects of the carbon emission factor, the EU marginal abatement cost benchmark, the CCER offset ratio (COR), and the government approval ratio (GAR). The results show that setting the carbon emission factor at 0.74 kgCO₂/kWh is crucial for constraining thermal power expansion and increasing the share of renewable energy to 77.3%. The coordinated implementation of CA and CCER reduces the overall compliance burden by approximately 35% through a combined effect. National- and provincial-level analyses further indicate that the optimal national COR and GAR are 6% and 10%, respectively, although substantial regional heterogeneity calls for differentiated policy design. These findings provide a useful basis for reducing transition costs, improving resource allocation, and enhancing policy coordination in China's power sector.
AB - The electricity sector faces multiple challenges during its transition, including pressure to reduce emissions, cost constraints, and uncertainty in the design of low-carbon policies. Consequently, effective coordination between policy instruments in the electricity and carbon markets has become essential for achieving a cost-effective sectoral transition. Using an SD-Un-Super-SBM framework, this study develops an integrated analytical model that links the electricity market, carbon allowances (CA), and Chinese Certified Emission Reductions (CCER) and systematically evaluates how different policy instruments and their settings affect sectoral development and structural adjustment. Fifteen scenarios are designed to examine the effects of the carbon emission factor, the EU marginal abatement cost benchmark, the CCER offset ratio (COR), and the government approval ratio (GAR). The results show that setting the carbon emission factor at 0.74 kgCO₂/kWh is crucial for constraining thermal power expansion and increasing the share of renewable energy to 77.3%. The coordinated implementation of CA and CCER reduces the overall compliance burden by approximately 35% through a combined effect. National- and provincial-level analyses further indicate that the optimal national COR and GAR are 6% and 10%, respectively, although substantial regional heterogeneity calls for differentiated policy design. These findings provide a useful basis for reducing transition costs, improving resource allocation, and enhancing policy coordination in China's power sector.
KW - Carbon market
KW - Chinese certified emission reductions
KW - Compliance cost
KW - Policy design
KW - Power sector decarbonization
KW - Structural adjustment
UR - https://www.scopus.com/pages/publications/105044976255
U2 - 10.1016/j.apenergy.2026.128492
DO - 10.1016/j.apenergy.2026.128492
M3 - Article
AN - SCOPUS:105044976255
SN - 0306-2619
VL - 424
JO - Applied Energy
JF - Applied Energy
M1 - 128492
ER -